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Conceptual design of the early implementation of the NEutron Detector Array (NEDA) with AGATA

Hueyuek, Tayfun (author)
Di Nitto, Antonio (author)
Jaworski, Grzegorz (author)
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Gadea, Andres (author)
Valiente-Dobon, Jose Javier (author)
Nyberg, Johan, 1955- (author)
Uppsala universitet,Institutionen för fysik och astronomi,Kärnfysik,Nuclear Structure
Palacz, Marcin (author)
Soederstroem, Paer-Anders (author)
Jose Aliaga-Varea, Ramon (author)
de Angelis, Giacomo (author)
Ataç, Ayşe (author)
KTH,Kärnfysik
Collado, Javier (author)
Domingo-Pardo, Cesar (author)
Egea, Francisco Javier (author)
Erduran, Nizamettin (author)
Ertuerk, Sefa (author)
de France, Gilles (author)
Gadea, Rafael (author)
Gonzalez, Vicente (author)
Herrero-Bosch, Vicente (author)
Kaskas, Ayse (author)
Modamio, Victor (author)
Moszynski, Marek (author)
Sanchis, Enrique (author)
Triossi, Andrea (author)
Wadsworth, Robert (author)
Ataç, Ay\cse (author)
Ka\cska\cs, Ay\cse (author)
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 (creator_code:org_t)
2016-03-18
2016
English.
In: European Physical Journal A. - : Springer-Verlag New York. - 1434-6001 .- 1434-601X. ; 52:3
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The NEutron Detector Array (NEDA) project aims at the construction of a new high-efficiency compact neutron detector array to be coupled with large gamma-ray arrays such as AGATA. The application of NEDA ranges from its use as selective neutron multiplicity filter for fusion-evaporation reaction to a large solid angle neutron tagging device. In the present work, possible configurations for the NEDA coupled with the Neutron Wall for the early implementation with AGATA has been simulated, using Monte Carlo techniques, in order to evaluate their performance figures. The goal of this early NEDA implementation is to improve, with respect to previous instruments, efficiency and capability to select multiplicity for fusion-evaporation reaction channels in which 1, 2 or 3 neutrons are emitted. Each NEDA detector unit has the shape of a regular hexagonal prism with a volume of about 3.23 l and it is filled with the EJ301 liquid scintillator, that presents good neutron-gamma discrimination properties. The simulations have been performed using a fusion-evaporation event generator that has been validated with a set of experimental data obtained in the Ni-58 + Fe-56 reaction measured with the Neutron Wall detector array.

Subject headings

NATURVETENSKAP  -- Fysik -- Subatomär fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Subatomic Physics (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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